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Ion beam mixing and interdiffusion in magnetite thin films

机译:磁铁矿薄膜中的离子束混合和相互作用

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Rutherford Backscattering Spectrometry was applied to investigate the stability of magnetite thin films including an ion beam bombardment. A series of single layer Fe3O4/MgO(001) and bi-layer Fe3O4/Fe/MgO(001) thin films with different layer thickness was prepared by the Molecular Beam Epitaxy (MBE) technique. To modify the film interfaces 1 MeV Kr+ ion beam with different ion fluences was used. We observed a pronounced Fe-Mg intermixing effect of the ion irradiation. The stoichiometric magnetite layer is well preserved even upon ion irradiation with small doses, which indicates a high stability of the Fe3O4 layer under different external conditions.
机译:勘探反光光谱谱法探讨了磁铁矿薄膜的稳定性,包括离子束轰击。通过分子束外延(MBE)技术制备具有不同层厚度的单层Fe3O4 / MgO(001)和双层Fe3O4 / Fe / MgO(001)薄膜。为了改变薄膜界面,使用具有不同离子流量的MEV KR +离子束。我们观察到离子辐射的明显Fe-mg混合效应。即使在小剂量的离子照射时,化学计量磁铁矿层也很好地保存,这表明在不同的外部条件下的Fe3O4层的高稳定性。

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